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Expression profiles of genes associated with inflammatory responses and oxidative stress in lung after heat stroke

Background: Heat stroke (HS) is a physically dysfunctional illness caused by hyperthermia. Lung, as the important place for gas-exchange and heat-dissipation organ, is often first to be injured. Lung injury caused by HS impairs the ventilation function of lung, which will subsequently cause damage t...

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Autores principales: Liu, Zhaoyu, Chen, Jitao, Hu, La, Li, Ming, Liang, Min, Chen, Jianan, Lin, Hai, Zeng, Zicheng, Yin, Weida, Dong, Zhijie, Weng, Jinsheng, Yao, Wenxia, Yi, Gao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7276522/
https://www.ncbi.nlm.nih.gov/pubmed/32436952
http://dx.doi.org/10.1042/BSR20192048
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author Liu, Zhaoyu
Chen, Jitao
Hu, La
Li, Ming
Liang, Min
Chen, Jianan
Lin, Hai
Zeng, Zicheng
Yin, Weida
Dong, Zhijie
Weng, Jinsheng
Yao, Wenxia
Yi, Gao
author_facet Liu, Zhaoyu
Chen, Jitao
Hu, La
Li, Ming
Liang, Min
Chen, Jianan
Lin, Hai
Zeng, Zicheng
Yin, Weida
Dong, Zhijie
Weng, Jinsheng
Yao, Wenxia
Yi, Gao
author_sort Liu, Zhaoyu
collection PubMed
description Background: Heat stroke (HS) is a physically dysfunctional illness caused by hyperthermia. Lung, as the important place for gas-exchange and heat-dissipation organ, is often first to be injured. Lung injury caused by HS impairs the ventilation function of lung, which will subsequently cause damage to other tissues and organs. Nevertheless, the specific mechanism of lung injury in heat stroke is still unknown. Methods: Rat lung tissues from controls or HS models were harvested. The gene expression profile was identified by high-throughput sequencing. DEGs were calculated using R and validated by qRT-PCR. Gene Ontology (GO), Kyoto Encyclopedia of Genes and Genomes (KEGG), and cell-enrichment were performed using differential expression genes (DEGs). Finally, lung histopathology was accessed by H&E staining. Results: About 471 genes were identified to be DEGs, of which 257 genes were up-regulated, and 214 genes were down-regulated. The most up-regulated and down-regulated DEGs were validated by qRT-PCR, which confirmed the tendency of expression. GO, KEGG, and protein–protein interaction (PPI)-network analyses disclosed DEGs were significantly enriched in leukocyte migration, response to lipopolysaccharide, NIK/NF-kappaB signaling, response to reactive oxygen species, response to heat, and the hub genes were Tnf, Il1b, Cxcl2, Ccl2, Mmp9, Timp1, Hmox1, Serpine1, Mmp8 and Csf1, most of which were closely related to inflammagenesis and oxidative stress. Finally, cell-enrichment analysis and histopathologic analysis showed Monocytes, Megakaryotyes, and Macrophages were enriched in response to heat stress. Conclusions: The present study identified key genes, signal pathways and infiltrated-cell types in lung after heat stress, which will deepen our understanding of transcriptional response to heat stress, and might provide new ideas for the treatment of HS.
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spelling pubmed-72765222020-06-16 Expression profiles of genes associated with inflammatory responses and oxidative stress in lung after heat stroke Liu, Zhaoyu Chen, Jitao Hu, La Li, Ming Liang, Min Chen, Jianan Lin, Hai Zeng, Zicheng Yin, Weida Dong, Zhijie Weng, Jinsheng Yao, Wenxia Yi, Gao Biosci Rep Immunology & Inflammation Background: Heat stroke (HS) is a physically dysfunctional illness caused by hyperthermia. Lung, as the important place for gas-exchange and heat-dissipation organ, is often first to be injured. Lung injury caused by HS impairs the ventilation function of lung, which will subsequently cause damage to other tissues and organs. Nevertheless, the specific mechanism of lung injury in heat stroke is still unknown. Methods: Rat lung tissues from controls or HS models were harvested. The gene expression profile was identified by high-throughput sequencing. DEGs were calculated using R and validated by qRT-PCR. Gene Ontology (GO), Kyoto Encyclopedia of Genes and Genomes (KEGG), and cell-enrichment were performed using differential expression genes (DEGs). Finally, lung histopathology was accessed by H&E staining. Results: About 471 genes were identified to be DEGs, of which 257 genes were up-regulated, and 214 genes were down-regulated. The most up-regulated and down-regulated DEGs were validated by qRT-PCR, which confirmed the tendency of expression. GO, KEGG, and protein–protein interaction (PPI)-network analyses disclosed DEGs were significantly enriched in leukocyte migration, response to lipopolysaccharide, NIK/NF-kappaB signaling, response to reactive oxygen species, response to heat, and the hub genes were Tnf, Il1b, Cxcl2, Ccl2, Mmp9, Timp1, Hmox1, Serpine1, Mmp8 and Csf1, most of which were closely related to inflammagenesis and oxidative stress. Finally, cell-enrichment analysis and histopathologic analysis showed Monocytes, Megakaryotyes, and Macrophages were enriched in response to heat stress. Conclusions: The present study identified key genes, signal pathways and infiltrated-cell types in lung after heat stress, which will deepen our understanding of transcriptional response to heat stress, and might provide new ideas for the treatment of HS. Portland Press Ltd. 2020-06-05 /pmc/articles/PMC7276522/ /pubmed/32436952 http://dx.doi.org/10.1042/BSR20192048 Text en © 2020 The Author(s). https://creativecommons.org/licenses/by/4.0/ This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY).
spellingShingle Immunology & Inflammation
Liu, Zhaoyu
Chen, Jitao
Hu, La
Li, Ming
Liang, Min
Chen, Jianan
Lin, Hai
Zeng, Zicheng
Yin, Weida
Dong, Zhijie
Weng, Jinsheng
Yao, Wenxia
Yi, Gao
Expression profiles of genes associated with inflammatory responses and oxidative stress in lung after heat stroke
title Expression profiles of genes associated with inflammatory responses and oxidative stress in lung after heat stroke
title_full Expression profiles of genes associated with inflammatory responses and oxidative stress in lung after heat stroke
title_fullStr Expression profiles of genes associated with inflammatory responses and oxidative stress in lung after heat stroke
title_full_unstemmed Expression profiles of genes associated with inflammatory responses and oxidative stress in lung after heat stroke
title_short Expression profiles of genes associated with inflammatory responses and oxidative stress in lung after heat stroke
title_sort expression profiles of genes associated with inflammatory responses and oxidative stress in lung after heat stroke
topic Immunology & Inflammation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7276522/
https://www.ncbi.nlm.nih.gov/pubmed/32436952
http://dx.doi.org/10.1042/BSR20192048
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